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首页> 外文期刊>Advanced energy materials >Tuning the Electron Density of Aromatic Solvent for Stable Solid-Electrolyte-Interphase Layer in Carbonate-Based Lithium Metal Batteries
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Tuning the Electron Density of Aromatic Solvent for Stable Solid-Electrolyte-Interphase Layer in Carbonate-Based Lithium Metal Batteries

机译:调整基于碳酸盐的锂金属电池中稳定的固体电解质界面层的芳族溶剂的电子密度

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Lithium metal has been hailed as a key enabler of upcoming rechargeable batteries with high energy densities. Nonetheless, uncontrolled dendritic growth and resulting formation of a nonuniform solid-electrolyte-interphase (SEI) layer constitute an ever-challenging obstacle in long-term cyclability and safety. So far, these drawbacks have been addressed mainly by using noncarbonate electrolytes based on their relatively mild decomposition under reductive environments. Here, toluene as a co-solvent of carbonate-based electrolytes for lithium metal anodes is reported. The electron-donating nature of the methyl group of toluene shifts the reduction of toluene prior to that of commonly used carbonate solvents, resulting in a more uniform and rigid SEI layer. Moreover, the polymerization process of toluene induces the decomposition of the bis(fluorosulfonyl)imide (FSI) anion in LiFSI salt to yield uniform distribution of lithium fluoride (LiF), and thus lowers an onset salt concentration in realizing the so-called "high-concentration effect" to 3 molar concentration, instead of 5 molar concentration as in typical electrolyte cases. This investigation reveals the usefulness of aromatic compounds in improving the stability of the SEI layer in lithium metal anodes, particularly by tuning the electron density of the benzene ring.
机译:金属锂被誉为即将推出的高能量密度可充电电池的关键推动力。然而,不受控制的树枝状生长以及由此形成的不均匀的固体电解质中间相(SEI)层构成了长期可循环性和安全性方面不断挑战的障碍。到目前为止,这些缺点主要是通过使用非碳酸盐电解质来解决的,这些非碳酸盐电解质基于它们在还原环境下相对温和的分解。在此,报道了甲苯作为用于锂金属阳极的碳酸酯类电解质的助溶剂。甲苯甲基的供电子特性使甲苯的还原率先于常用的碳酸盐溶剂,从而使SEI层更加均匀和牢固。此外,甲苯的聚合过程引起LiFSI盐中的双(氟磺酰基)酰亚胺(FSI)阴离子的分解,从而使氟化锂(LiF)均匀分布,从而降低了盐的起始浓度,从而实现了“高浓度效应达到3摩尔浓度,而不是典型电解质情况下的5摩尔浓度。这项研究揭示了芳族化合物在改善锂金属阳极中SEI层稳定性方面的有用性,特别是通过调节苯环的电子密度。

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